Cavity effect on NQO1
Authors/Creators
Description
Raw data published in: Pacheco-Garcia JL, Loginov DS, Anoz-Carbonell E, Vankova P, Palomino-Morales R, Salido E, Man P, Medina M, Naganathan AN, Pey AL. Allosteric Communication in the Multifunctional and Redox NQO1 Protein Studied by Cavity-Making Mutations. Antioxidants (Basel). 2022 Jun 2;11(6):1110. doi: 10.3390/antiox11061110. PMID: 35740007; PMCID: PMC9219786.
Data measured using a stopped-flow spectrophotometer from Applied Photophysics (SX.18MV, Applied Photophysics Ltd., Leatherhead, UK) interfaced with a photodiode array detector and under anaerobic conditions, following previously established protocols. Multiple wavelength absorption data in the flavin absorption region (400-900 nm) were collected and processed using the ProData-SX software (Applied Photophysics Ltd.). Time-dependent spectral deconvolution was performed by global analysis and numerical integration methods using Pro-Kineticist (Applied Photophysics Ltd.). Collected data were fitted to either single- or multi-step (A→B→n….→Z) models allowing for estimation of the corresponding observed conversion rate constants at each NADH concentration, as well of the spectra of intermediate and final species.
Experimental section:
Password: nqo1
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- Is part of
- Publication: 10.3390/antiox11061110 (DOI)
Dates
- Created
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2022-06
References
- Pacheco-Garcia JL, Loginov DS, Anoz-Carbonell E, Vankova P, Palomino-Morales R, Salido E, Man P, Medina M, Naganathan AN, Pey AL. Allosteric Communication in the Multifunctional and Redox NQO1 Protein Studied by Cavity-Making Mutations. Antioxidants (Basel). 2022 Jun 2;11(6):1110. doi: 10.3390/antiox11061110. PMID: 35740007; PMCID: PMC9219786.